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首页> 外文期刊>Optics and Spectroscopy >Theoretical Analysis of the Waveguide Propagation of Electromagnetic Waves in Dielectric Smoothly-Irregular Integrated Structures
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Theoretical Analysis of the Waveguide Propagation of Electromagnetic Waves in Dielectric Smoothly-Irregular Integrated Structures

机译:介质光滑不规则集成结构中电磁波在波导中传播的理论分析

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摘要

The waveguide propagation of a monochromatic electromagnetic wave in a multilayer smoothly-irregular integrated dielectric structure has been studied under natural physical and mathematical assumptions. Approximate solution of the vector electrodynamic problem satisfying the condition of smoothly varying shape of the structure is found using the Kantorovich method of the partial separation of variables, since the conventional method of separating variables, which is usually employed for regular waveguides, in the given case is inapplicable. Using the obtained solution, it is possible to describe analytically the fields of smoothly deforming modes of a dielectric waveguide, their interrelation, and the dispersion relations between the distribution of the phase slowing coefficient and the local inclination of layers in the structure under consideration. The proposed method can also be used, in a quite broad range of wavelengths, for an analysis of analogous waveguide structures made of both dielectric and magnetic materials.
机译:在自然的物理和数学假设下,已经研究了单色电磁波在多层平滑不规则集成介电结构中的波导传播。使用变量的部分分离的Kantorovich方法,可以找到满足结构形状平滑变化的条件的矢量电动力学问题的近似解,这是因为在给定情况下通常使用常规方法来分离变量的常规方法不适用。使用所获得的解决方案,可以分析地描述介电波导的平滑变形模式的场,它们的相互关系以及所考虑的结构中相减慢系数的分布与层的局部倾斜之间的色散关系。所提出的方法还可以在很宽的波长范围内用于分析由介电和磁性材料制成的类似波导结构。

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